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Jobs at Eonite Perception

3D mapping and tracking

Join the team working on some of the hardest and most significant problems in computer vision. At Eonite Perception, we’ve developed an extraordinarily accurate 3D SLAM and applied it to perform inside-out positional tracking for HMDs, drones and autonomous robots. Inside-out positional tracking is a technology in high-demand that enables VR/AR/MR to reach their mass market potential. Be part of the team that pushes into unexplored territories, and opens up exciting new possibilities for computing.
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Join the team working on some of the hardest and most significant problems in computer vision. At Eonite Perception, we’ve developed an extraordinarily accurate 3D SLAM and applied it to perform inside-out positional tracking for HMDs, drones and autonomous robots. Inside-out positional tracking is a technology in high-demand that enables VR/AR/MR to reach their mass market potential. Be part of the team that pushes into unexplored territories, and opens up exciting new possibilities for computing.

At Eonite, we treat our team members like the independent adults we’re looking for. We offer a lot of freedom, in order to foster the creativity necessary to innovate. Our team is small and dynamic - no matter what you’re doing, it’ll have a big impact.

Our office has all the latest VR gear to play with, catered healthy free lunches with the team, and a gym membership that’s a 10-minute walk from the office. There’s plenty of free parking, and we’re just a minute from the 101. We work flexible hours, and celebrate and embrace a global diversity of ideas, personalities and cultures. We’re looking for an exceptional team to help us tear down the wall between technology and reality. We need smart, enthusiastic engineers who can not only operate effectively on their own, but also thrive in a fast-paced, evolving environment.

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What We're Building

We built a 3D mapping and ego-tracking system using commodity dense depth sensors with 3 key capabilities that enable it to operate in the real world:
sub-millimeter accuracy, low latency, and robust global localization.